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  4. Significance of AtMTM1 and AtMTM2 for Mitochondrial MnSOD Activation in Arabidopsis
 
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Significance of AtMTM1 and AtMTM2 for Mitochondrial MnSOD Activation in Arabidopsis

Journal
Frontiers in Plant Science
Journal Volume
12
Journal Issue
Article number 690064
Date Issued
2021-08-06
Author(s)
Hu, Shu Hsuan
Lin, Shu Fan
Huang, Ya Chen
Huang, Chien Hsun
Kuo, Wen Yu
TSUNG-LUO JINN  
DOI
10.3389/fpls.2021.690064
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/582865
URL
https://api.elsevier.com/content/abstract/scopus_id/85113303853
Abstract
The manganese (Mn) tracking factor for mitochondrial Mn superoxide dismutase (MnSOD) has been annotated as yMTM1 in yeast, which belongs to the mitochondrial carrier family. We confirmed that Arabidopsis AtMTM1 and AtMTM2 are functional homologs of yMTM1 as they can revive yeast MnSOD activity in yMTM1-mutant cells. Transient expression of AtMnSOD-3xFLAG in the AtMTM1 and AtMTM2-double mutant protoplasts confirmed that AtMTM1 and AtMTM2 are required for AtMnSOD activation. Our study revealed that AtMnSOD interacts with AtMTM1 and AtMTM2 in the mitochondria. The expression levels of AtMTM1, AtMTM2, and AtMnSOD respond positively to methyl viologen (MV) and metal stress. AtMTM1 and AtMTM2 are involved in Mn and Fe homeostasis, root length, and flowering time. Transient expression of chloroplast-destined AtMnSOD revealed that an evolutionarily conserved activation mechanism, like the chloroplastic-localized MnSOD in some algae, still exists in Arabidopsis chloroplasts. This study strengthens the proposition that AtMTM1 and AtMTM2 participate in the AtMnSOD activation and ion homeostasis.
Subjects
metalloenzyme | mitochondrial carrier family | Mn transporter | MnSOD | reactive oxygen species | superoxide dismutase
Publisher
Frontiers Media S.A.
Type
journal article

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